Fluorescent exterior rock stratum and preparation method as well as indoor man-made landscape using fluorescent exterior rock stratum
A fluorescent and rock formation technology, applied in the field of indoor landscape, can solve the problems of slow drying speed, inconvenient installation, easy to lose corners, etc., and achieve the effect of fast drying speed, firm fixation and convenient installation
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[0028] The present invention is a fluorescent outer rock formation, a preparation method and an indoor artificial landscape using the fluorescent outer rock formation; the indoor artificial landscape includes a fluorescent outer rock formation 11, and a water-based resin mortar moisture-proof layer 12 and a steel grid frame arranged inside the fluorescent outer rock formation 11 in sequence 14, where fluorescent outer rock formations include:
[0029] (1) A fluorescent outer rock formation, which is made of the following raw materials in parts by weight: 40-50 parts of polyvinyl chloride resin, 30-46 parts of tri-n-butyl citrate, 34 parts of polyvinyl butyral -42 parts, 12-48 parts of color masterbatch, 20-28 parts of carbon black, 18-26 parts of nano silicon powder, 16-22 parts of long glass fiber, 10-16 parts of diacetone acrylamide, 12-16 parts of ethylene carbonate , zinc pyrithione 14-18 parts, barium sulfate 40-50 parts, magnesium sulfate 20-36 parts, lithium phosphate 4...
Embodiment 1
[0046] A fluorescent outer rock formation, which is made of the following raw materials in parts by weight: 40 parts of polyvinyl chloride resin, 30 parts of tri-n-butyl citrate, 34 parts of polyvinyl butyral, 12 parts of color masterbatch, 20 parts of carbon black, 18 parts of nano silicon powder, 16 parts of long glass fiber, 10 parts of diacetone acrylamide, 12 parts of ethylene carbonate, 14 parts of zinc pyrithione, 40 parts of barium sulfate, 20 parts of magnesium sulfate, 4 parts of lithium phosphate 4 parts of copper nitrate, 2 parts of styrene-maleic anhydride copolymer compatibilizer, 3 parts of azodicarbonamide foaming agent, 1 part of zinc diethyldithiocarbamate accelerator and polyhydroxylamine shrinking agent 1 serving.
[0047] A method for preparing a fluorescent outer rock formation, comprising the steps of:
[0048] 1) Add polyvinyl chloride resin, tri-n-butyl citrate and polyvinyl butyral to the reactor, and heat the reactor to 200-240°C to make polyvinyl c...
Embodiment 2
[0058] A fluorescent outer rock formation, which is made of the following raw materials in parts by weight: 50 parts of polyvinyl chloride resin, 46 parts of tri-n-butyl citrate, 42 parts of polyvinyl butyral, 48 parts of color masterbatch, 28 parts of carbon black, 26 parts of nano silicon powder, 22 parts of long glass fiber, 16 parts of diacetone acrylamide, 16 parts of ethylene carbonate, 18 parts of zinc pyrithione, 50 parts of barium sulfate, 36 parts of magnesium sulfate, 8 parts of lithium phosphate 6 parts of copper nitrate, 4 parts of styrene-maleic anhydride copolymer compatibilizer, 5 parts of azodicarbonamide blowing agent, 3 parts of zinc diethyldithiocarbamate accelerator and polyhydroxylamine shrinking agent 3 copies.
[0059] A method for preparing a fluorescent outer rock formation, comprising the steps of:
[0060] 1) Add polyvinyl chloride resin, tri-n-butyl citrate and polyvinyl butyral to the reactor, and heat the reactor to 200-240°C to make polyvinyl c...
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