Crosslinkable compositions based on organosilicon compounds
A technology of organosilicon compound and composition, which is applied in the direction of fabric, textile, transportation and packaging, etc., and can solve the problems of deterioration of physical properties of elastic coating, reduction of outer coating, deterioration of coating performance, etc.
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Embodiment 1
[0116] Example 1, (BE-1), an optimized formulation containing talc as an effective filler, 128 g was dissolved from a viscosity of 1000 mm Pascal seconds, vinyl-terminated dimethylpolysiloxane and unfunctionalized silicate filler with an additional 70 grams of dimethylpolysiloxane and 110 grams of fine-grained thin film Layered solids (fine-grained talc) are incorporated under intense shear. And 22.6 grams of 1-dodecene, 6 grams of tetraethyl silicate, 0.4 grams of trimethylsilanol and 1.2 grams of platinum catalyst (1,3-divinyl-1,1,3,3-tetramethyl Platinum disiloxane complex containing 1% by weight of platinum), 10 g of methylhydrogenpolysiloxane and adhesion promoter (hydrogen content of 1.25% by weight, viscosity of 10 to 20 mPa·s) and 0.6 grams of ethynylcyclohexanol were mixed into the grinding batch. The viscosity was adjusted to 53,600 mPa·s.
Embodiment 2
[0117] Example 2, (BE-2), formulation containing mica as effective filler
[0118] Instead of fine-grained talc, 56 grams of coarse-grained muscovite were mixed into this example formulation (BE-1) under shear and the viscosity was comparable adjusted to 57,200 mPa·s.
Embodiment 3
[0119] Example 3, (BE-3), formulation containing spherical particles as effective filler
[0120] Instead of fine-grained talc, 16 g of nanoscale spherical particles mainly composed of quartz material were mixed into this example formulation (BE-1) under shear, and the viscosity was comparablely adjusted to 50,800 mPa·s .
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