Fluorescigenic pavement reflecting adhesive tape and manufacturing method thereof
A technology of reflective adhesives and adhesive tapes, applied in adhesives, luminescent coatings, chemical instruments and methods, etc., can solve the problems of invisible, decreased retroreflection on the surface of adhesive tapes, and different refractive indices, achieving easy implementation and easy mastery. Effect
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Embodiment 1
[0029] Example 1 The manufacture of a fluorescent reflective road surface adhesive tape with composite aluminum foil as the base material:
[0030] (1) Manufacture of reflective coating: 5.0 parts by weight of white pigments and fillers (including 4.0 parts by weight of titanium dioxide and 1.0 parts by weight of mica) are added to 85 parts by weight of polyurethane resin (matrix resin) with a solid content of 50% under constant stirring at room temperature. 2.5 parts by weight of fluorescent material (including: 2.0 parts by weight of zinc sulfide phosphor activated by rare earth ions and 0.5 part by weight of strontium aluminate phosphor activated by rare earth ions), after stirring evenly, the fluorescent coating is made . Then the coating is scraped and coated on the front side (upper side) of the composite aluminum foil substrate (the back side (lower side) of a commercially available thickness of 0.1 mm aluminum foil is pasted with a layer of loose polyester non-woven fa...
Embodiment 2
[0033] Example 2 Manufacture of road surface reflective adhesive tape with composite rubber sheet as base material that can emit fluorescence and has a substantially flat surface:
[0034] (1) Manufacture of composite rubber sheet base material with basically flat surface:
[0035] A) 16.0 parts by weight of nitrile rubber, 4.0 parts by weight of polyester fiber, 5.0 parts by weight of polymer plasticizer (HXJZ-1), 20 parts by weight of white pigment titanium dioxide, 7.5 parts by weight of zinc oxide and 6.4 parts by weight of talcum powder Heat to 820C and mix for 1 minute in an internal mixer, then add 0.3 parts by weight of phenolic antioxidant, 13.0 parts by weight of chlorinated polyethylene and 0.3 parts by weight of stearic acid, continue heating and mixing for 3 minutes until the temperature reaches 100 --120℃, heat the kneaded material into the open mill, knead until the material is evenly mixed, and then heat the kneaded material into the calender, and roll it into ...
Embodiment 3
[0040] Example 3 Manufacture of an oscillating road surface reflective adhesive tape with a composite rubber sheet as the base material that can emit fluorescence and have a rough (concave-convex) pattern on the surface:
[0041] (1) Manufacture of composite rubber sheet substrate with uneven (concave-convex) patterns on the surface:
[0042] A) According to the same formula and processing technology as in Example 2 (1) A), the rubber compound is rolled into a thickness of 2.2mm in the calender, which is basically smooth on the surface, has neither retroreflective (reflective) performance nor can Ordinary white composite rubber sheet that emits fluorescence, and after heating, the white composite rubber sheet is pressed between an embossing roller engraved with uneven (concave-convex) patterns and a smooth idler roller to form a surface belt. Composite rubber sheet base material with required height (concave-convex) uneven pattern, neither retroreflective (ie reflective) perfo...
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