Nano glass powder and use thereof, particularly multicomponent glass powder with a mean particle size of less than 1 [mu]m
A technology of glass powder and average particle size, which is applied in glass forming, nanotechnology, nanotechnology, etc., and can solve the problem of not getting glass powder
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Embodiment 1
[0095] Example 1 relates to nanoglass powders which are incorporated into polymer matrices and produce an antibacterial effect of polymer-nanoglass-composites-active ingredients. According to Example 1, 0.1% by weight of nano-glass powder with a particle size of less than 1 μm was added to a polystyrene matrix in the proportion of Example 2 in Table 1 and extruded into a flat plate. The antimicrobial effect of the surface will be tested according to ASTM standards. The reduction of the test bacteria (E. coli, C. albicans) was determined to be more than 2 orders of magnitude (log-stufen).
[0096] According to Example 2, according to Example 1 in Table 1, 0.1% by weight of bioactive nano-glass powder with a particle size of less than 1 nm is included for the formulation of a deodorant. Significant sweat reduction (Schweissreduktion) was observed.
[0097] In Example 3, 50% by weight of the nanoglass powder according to the present invention was added to the dental resin. Typ...
Embodiment 5
[0099] Example 5 relates to a solder glass consisting of 70% by volume of nanoglass powder having the composition of Example 9 in Table 1 and 30% by volume of an inert filler (such as cordierite) for expansion matching with a particle size of less than 1 μm. )composition. The resulting nanocomposite glass solder has a melting temperature that is about 50°C lower than that of the same starting material mixture.
Embodiment 6
[0100] Example 6 relates to a polymer-glass composition wherein 5, 10, 20% by weight of a fluoropolymer is mixed with a nanopowder having a lead silicate glass composition with a refractive index of n=1.9, respectively. Due to the fraction of nanopowders in the fluoropolymer, the synthetic material shifts to a higher value of the refractive index.
[0101] In Example 7, in order to achieve UV shielding, 5% by weight of nano-glass powder with a particle size of less than 1 μm and a glass component containing 2% by weight of TiO2 were added to the sunscreen formulation.
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